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下丘脑大细胞核中表达 Spexin 的神经元。

Spexin-expressing neurons in the magnocellular nuclei of the human hypothalamus.

机构信息

Department of Histology, School of Medical Sciences in Katowice, Medical University of Silesia, ul. Medyków 18, 40-752, Katowice, Poland.

Department of Histology, School of Medical Sciences in Katowice, Medical University of Silesia, ul. Medyków 18, 40-752, Katowice, Poland.

出版信息

J Chem Neuroanat. 2021 Jan;111:101883. doi: 10.1016/j.jchemneu.2020.101883. Epub 2020 Nov 5.

Abstract

Neuropeptides are involved in numerous brain activities being responsible for a wide spectrum of higher mental functions. The purpose of this concise, structural and qualitative investigation was to map the possible immunoreactivity of the novel neuropeptide spexin (SPX) within the human magnocellular hypothalamus. SPX is a newly identified peptide, a natural ligand for the galanin receptors (GALR) 2/3, with no molecular structure similarities to currently known regulatory factors. SPX seems to have multiple physiological functions, with an involvement in reproduction and food-intake regulation recently revealed in animal studies. For the first time we describe SPX expressing neurons in the supraoptic (SON) and paraventricular (PVN) nuclei of the human hypothalamus using immunohistochemical and fluorescent methods, key regions involved in the mechanisms of osmotic homeostasis, energy expenditure, consummatory behaviour, reproductive processes, social recognition and stress responses. The vast majority of neurons located in both examined neurosecretory nuclei show abundant SPX expression and this may indirectly implicate a potential contribution of SPX signalling to the hypothalamic physiology in the human brain.

摘要

神经肽参与了许多大脑活动,负责广泛的高级心理功能。本简明、结构和定性研究的目的是绘制新型神经肽 Spexin (SPX) 在人类大细胞下丘脑内的可能免疫反应。SPX 是一种新发现的肽,是甘丙肽受体 (GALR) 2/3 的天然配体,与目前已知的调节因子没有分子结构相似性。SPX 似乎具有多种生理功能,最近在动物研究中发现其参与了生殖和摄食调节。我们首次使用免疫组织化学和荧光方法描述了 SPX 在人下丘脑的视上核 (SON) 和室旁核 (PVN) 中的表达神经元,这些区域是参与渗透稳态、能量消耗、摄食行为、生殖过程、社会识别和应激反应机制的关键区域。位于两个被检查的神经分泌核中的绝大多数神经元都显示出丰富的 SPX 表达,这可能间接地暗示 SPX 信号对人类大脑下丘脑生理学的潜在贡献。

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